An intelligent aluminum alloy door and window with adaptive temperature control

Through adaptive adjustment and temperature control mechanism and intelligent control technology, the problem of aluminum alloy doors and windows being difficult to accurately control the window opening time in summer is solved, and intelligent window adjustment is realized, which improves ventilation and heat dissipation effect and practicality.

CN116065930BActive Publication Date: 2025-08-01JIANGSU HAIYING DERATU ENERGY SAVING TECH CO LTD
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Patent Information

Application Number
CN202310197505.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-03
Publication Date
2025-08-01
Estimated Expiration
2043-03-03

AI Technical Summary

Technical Problem

It is difficult to accurately control the window opening time in summer, resulting in increased indoor temperature or poor cooling effect.

Method used

An intelligent aluminum alloy door and window with adaptive adjustment and temperature control is designed. Through the appropriate temperature control mechanism, the window opening and closing is automatically adjusted by using an electromagnetic and temperature sensor, and combined with Bluetooth connection and timing functions, intelligent control is achieved.

Benefits of technology

It realizes automatic adjustment of window status according to outdoor temperature, improves ventilation and heat dissipation effect, prevents indoor temperature from rising, enhances the intelligence and practicality of windows, and improves aesthetics and convenience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application discloses an intelligent aluminum alloy door and window with adaptive temperature regulation for the field of aluminum alloy doors and windows. Through the setting of the adaptive temperature regulation mechanism, in summer, the adaptive temperature regulation mechanism will automatically adjust the opening and closing of the window according to the outdoor temperature. When the outdoor temperature is relatively low, the adaptive temperature regulation mechanism will automatically open the window for ventilation and heat dissipation to reduce the indoor temperature. After the outdoor temperature rises, the adaptive temperature regulation mechanism will automatically close the window to delay the rise of the indoor temperature. There is no need for people to manually open and close it. It can not only make the window more intelligent, enhance the ventilation and heat dissipation function of the window, but also prevent the indoor temperature from rising sharply due to people opening the window at the wrong time. In addition, users can flexibly set the critical temperature for the master control unit to control the opening and closing of the window according to the actual situation. Moreover, this aluminum alloy door and window can also be opened and closed regularly, improving its practicability.
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Description

Technical Field

[0001] This application relates to the field of aluminum alloy doors and windows. More specifically, it relates to an intelligent aluminum alloy door and window with adaptive temperature control. Background Art

[0002] Aluminum alloy doors and windows are windows with frames and sashes made of aluminum alloy building profiles, which are divided into ordinary aluminum alloy doors and windows and broken bridge aluminum alloy doors and windows. Aluminum alloy doors and windows are beautiful, sealed, and have high strength, and are widely used in the field of construction projects. In home decoration, aluminum alloy doors and windows are commonly used to enclose balconies.

[0003] Windows can play the role of ventilation and heat exchange, and adjust the indoor temperature. Especially in summer, reasonably opening and closing the windows of the balcony can reduce the indoor temperature. However, to achieve the effect of reducing the indoor temperature, attention needs to be paid to the window opening time. When the outdoor temperature is too high, opening the window will not only not cool down, but will instead cause the indoor temperature to rise. However, it is usually difficult for people to accurately control the reasonable window opening time, so the cooling effect cannot be achieved smoothly. Therefore, we propose an intelligent aluminum alloy door and window with adaptive temperature control. Summary of the Invention

[0004] The purpose of this application is to design an intelligent aluminum alloy door and window for balconies that can adaptively adjust the opening and closing of the window according to the outdoor temperature in summer to achieve the effect of ventilation and heat dissipation. Compared with the prior art, an intelligent aluminum alloy door and window with adaptive temperature control is provided, including a window frame and a pair of window bodies. An adaptive temperature control mechanism is provided on the window frame. The adaptive temperature control mechanism includes a left storage groove and a right storage groove opened on the window frame. The left storage groove and the right storage groove are respectively opened in the frame bodies on the left and right sides of the window frame. An adaptive intelligent controller and an opening control electromagnet are fixedly installed in the left storage groove, and a closing control electromagnet is fixedly installed in the right storage groove. An external temperature sensor is fixedly installed on the window frame. One end of each of the pair of window bodies close to the left storage groove is embedded with an opening control bar magnet, and one end of one of the left storage grooves close to the right storage groove is embedded with a closing control bar magnet. An analysis and total control unit and an opening and closing control module are provided in the adaptive intelligent controller. The external temperature sensor is electrically connected to the analysis and total control unit, the analysis and total control unit is electrically connected to the opening and closing control module, and the opening and closing control module is electrically connected to both the opening control electromagnet and the closing control electromagnet. Through the setting of the adaptive temperature control mechanism, in summer, the adaptive temperature control mechanism will automatically adjust the opening and closing of the window according to the outdoor temperature, without the need for people to manually open and close it. This not only makes the window more intelligent, enhances the ventilation and heat dissipation effect of the window, but also prevents the indoor temperature from rising sharply due to people opening the window at the wrong time.

[0005] Furthermore, a Bluetooth connection module is also provided in the adaptive intelligent controller. The Bluetooth connection module is electrically connected to the analysis master control unit, enabling people to use intelligent devices with Bluetooth functions (such as mobile phones, etc.) to connect to the analysis master control unit through the timing switch module, so that the critical temperatures for the analysis master control unit to control the opening and closing of the window can be flexibly set according to the actual situation.

[0006] Furthermore, a timing switch module is also provided in the adaptive intelligent controller. The Bluetooth connection module is electrically connected to the timing switch module, and the timing switch module is electrically connected to the opening and closing control module, enabling the aluminum alloy doors and windows in this application to also be opened and closed regularly, improving the practicability.

[0007] Furthermore, the adaptive temperature control mechanism further includes an internal temperature sensor fixedly installed on the window frame. The internal temperature sensor is electrically connected to the analysis master control unit, so that when people turn on the air conditioner to cool down, the adaptive temperature control mechanism will not automatically open the window, improving the practicability.

[0008] Optionally, the adaptive temperature control mechanism further includes a power supply wire embedded in the window frame. One end of the power supply wire is fixedly connected with a power supply plug. The adaptive intelligent controller, the control opening electromagnet, the external temperature sensor, the control closing electromagnet, and the internal temperature sensor are all electrically connected to the power supply wire, facilitating the power supply for the adaptive intelligent controller, the control opening electromagnet, etc. The adaptive temperature control mechanism further includes a master control switch fixedly installed on the window frame. The adaptive intelligent controller, the external temperature sensor, and the internal temperature sensor are all electrically connected to the master control switch, enabling people to control the opening and closing of the functions of the adaptive temperature control mechanism with one key, improving the convenience.

[0009] Furthermore, isolation panels are embedded on both of the pair of window bodies. The isolation panels are located at one end of the window body close to the left storage slot, and the isolation panels are made of magnetic isolation materials. The isolation panels can play a role in magnetic isolation and prevent mutual influence between the two control opening bar magnets.

[0010] Optionally, an implicit power supply mechanism is provided on the window frame. The implicit power supply mechanism includes a protection box. A power supply is fixedly installed inside the protection box. The adaptive intelligent controller, the control opening electromagnet, the external temperature sensor, the control closing electromagnet, and the internal temperature sensor are all electrically connected to the power supply. The implicit power supply mechanism further includes a connecting slide rail fixedly installed on the window frame. A connecting slider matching the connecting slide rail is fixedly connected to the outer wall of the protection box. The connecting slider is slidably connected to the connecting slide rail. One end of the power supply is electrically connected to a charging wire. The charging wire passes through the outer wall of the protection box and extends to the outside of the protection box, and a charging plug is fixedly connected to the end of the charging wire away from the power supply, enabling the power supply to also supply power to the adaptive intelligent controller, the control opening electromagnet, etc. in the adaptive temperature control mechanism. The implicit power supply mechanism is hidden outdoors, which can improve the aesthetics of the window, and the power supply is convenient for charging, improving the convenience.

[0011] Further, the implicit power supply mechanism further includes a support cylinder fixedly installed on the window frame. An electric telescopic rod is fixedly installed inside the support cylinder. The output end of the electric telescopic rod is fixedly connected with a reminder lamp. The bottom end of the reminder lamp is fixedly connected with a movable stopper. The movable stopper penetrates through the outer wall of the support cylinder and is slidably connected thereto. A power detection module and a reminder control module are also arranged in the adaptive intelligent controller. The power supply is electrically connected to the power detection module. The power detection module is electrically connected to the reminder control module. The reminder control module is electrically connected to both the electric telescopic rod and the reminder lamp. Both the electric telescopic rod and the reminder lamp are electrically connected to the power supply. When the remaining power of the power supply is low, the reminder lamp will send a reminder to people, which can prompt people to charge the power supply in time, and further prevent the operation of the adaptive temperature control mechanism from being affected, improving the practicability.

[0012] Further, a connecting ring is fixedly connected to the outer wall of the protection box. A wire storage cylinder matching the connecting ring is threadedly connected to the inner side of the connecting ring. The charging plug and part of the charging wire are located inside the wire storage cylinder. The wire storage cylinder can play a role in storing and protecting the charging wire and the charging plug.

[0013] Further, a sunshade baffle is fixedly connected to the outer wall of the protection box. The sunshade baffle can play a sunshade role to prevent the power supply from being damaged by exposure to the sun. Heat dissipation holes are formed in the outer wall of the protection box. The heat dissipation holes can improve the heat dissipation efficiency and prevent the temperature inside the protection box from being too high. A dust-proof net matching the heat dissipation holes is fixedly installed inside the heat dissipation holes. The dust-proof net can prevent dust from entering the protection box.

[0014] Compared with the prior art, the advantages of this application are as follows:

[0015] (1) Through the setting of the adaptive temperature control mechanism in this application, in summer, the adaptive temperature control mechanism will automatically adjust the opening and closing of the window according to the outdoor temperature. When the outdoor temperature is relatively low, the adaptive temperature control mechanism will automatically open the window for ventilation and heat dissipation to reduce the indoor temperature. After the outdoor temperature rises, the adaptive temperature control mechanism will automatically close the window to delay the rise of the indoor temperature. There is no need for people to manually open and close it. It can not only make the window more intelligent, enhance the ventilation and heat dissipation effect of the window, but also prevent the indoor temperature from rising sharply due to people opening the window at the wrong time.

[0016] (2) A Bluetooth connection module is also arranged in the adaptive intelligent controller. The Bluetooth connection module is electrically connected to the analysis master control unit, enabling people to use a smart device with Bluetooth function (such as a mobile phone, etc.) to connect to the analysis master control unit through the timing switch module, so as to flexibly set the critical temperature for the analysis master control unit to control the opening and closing of the window according to the actual situation.

[0017] (3) A timing switch module is also provided in the adaptive intelligent controller. The Bluetooth connection module is electrically connected to the timing switch module, and the timing switch module is electrically connected to the opening and closing control module, enabling the aluminum alloy doors and windows in this application to be opened and closed regularly, thus improving the practicality.

[0018] (4) The adaptive temperature control mechanism further includes an internal temperature sensor fixedly installed on the window frame. The internal temperature sensor is electrically connected to the analysis and master control unit, so that when people turn on the air conditioner to cool down, the adaptive temperature control mechanism will not automatically open the window, improving the practicality.

[0019] (5) Through the setting of the implicit power supply mechanism, it is also possible to supply power to the adaptive intelligent controller, control opening electromagnets, etc. in the adaptive temperature control mechanism through a power source. The implicit power supply mechanism is hidden outdoors, which can improve the aesthetics of the window, and the power source is convenient for charging, improving the convenience.

[0020] (6) Through the combined setting of the power quantity detection module, reminder control module, electric telescopic rod, reminder lamp, etc., when the remaining power of the power source is low, the reminder lamp will send a reminder to people, which can prompt people to charge the power source in time, and further prevent the operation of the adaptive temperature control mechanism from being affected, improving the practicality. Moreover, the support cylinder, reminder lamp, etc. are usually hidden outdoors, thus not affecting the aesthetics of the window. Description of the Drawings

[0021] Figure 1 It is a three-dimensional structure schematic diagram of the intelligent aluminum alloy door and window in Embodiment 1 of this application;

[0022] Figure 2 For this application Figure 1 It is a side view sectional structure schematic diagram at position A in this application;

[0023] Figure 3 For this application Figure 1 It is an enlarged structure schematic diagram at position B in this application;

[0024] Figure 4 For this application Figure 1 It is a front view sectional structure schematic diagram at position C in this application;

[0025] Figure 5 It is a system structure block diagram of the adaptive intelligent controller in Embodiment 1 of this application;

[0026] Figure 6 It is a three-dimensional structure schematic diagram of the intelligent aluminum alloy door and window in Embodiment 2 of this application;

[0027] Figure 7 For this application Figure 6 It is a side view structure schematic diagram at position D in this application;

[0028] Figure 8Schematic cross-sectional structure diagram of the protection box of the present application;

[0029] Figure 9 Schematic cross-sectional structure diagram of the support cylinder of the present application;

[0030] Figure 10 System structure block diagram of the adaptive intelligent controller in Embodiment 2 of the present application.

[0031] Description of the reference numerals in the figure:

[0032] 101, window frame; 102, window body; 201, left storage groove; 202, adaptive intelligent controller; 203, control-open electromagnet; 204, external temperature sensor; 205, control-open bar magnet; 206, right storage groove; 207, control-close electromagnet; 208, control-close bar magnet; 209, internal temperature sensor; 210, power supply wire; 211, power supply plug; 212, main control switch; 213, isolation panel; 301, protection box; 302, power supply; 303, connecting slide rail; 304, connecting slider; 305, charging wire; 306, charging plug; 307, wire storage cylinder; 308, connecting ring; 309, heat dissipation holes; 310, dust-proof net; 311, support cylinder; 312, electric telescopic rod; 313, reminder lamp; 314, movable stop block; 315, sunshade baffle. Detailed implementation manners

[0033] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application; obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0034] Embodiment 1:

[0035] Please refer to Figures 1-5, this application discloses an intelligent aluminum alloy door and window with adaptive temperature control, including a window frame 101 and a pair of window bodies 102. An adaptive temperature control mechanism is provided on the window frame 101. The adaptive temperature control mechanism includes a left storage groove 201 and a right storage groove 206 opened on the window frame 101. The left storage groove 201 and the right storage groove 206 are respectively opened in the frame bodies on the left and right sides of the window frame 101. An adaptive intelligent controller 202 and a control opening electromagnet 203 are fixedly installed in the left storage groove 201, and a control closing electromagnet 207 is fixedly installed in the right storage groove 206. An external temperature sensor 204 is fixedly installed on the window frame 101. Control opening bar magnets 205 are embedded at one end of a pair of window bodies 102 close to the left storage groove 201, and a control closing bar magnet 208 is embedded at one end of one of the left storage grooves 201 close to the right storage groove 206. An analysis and general control unit and an opening and closing control module are provided in the adaptive intelligent controller 202. The external temperature sensor 204 is electrically connected to the analysis and general control unit, the analysis and general control unit is electrically connected to the opening and closing control module, and the opening and closing control module is electrically connected to both the control opening electromagnet 203 and the control closing electromagnet 207. In summer, the temperature is relatively low at night and in the morning, and the window can be opened for ventilation and heat dissipation. The external temperature sensor 204 can monitor the outdoor temperature, and the monitored temperature data will be transmitted to the analysis and general control unit. When the analysis and general control unit determines that the outdoor temperature is relatively low, it will send an instruction to the opening and closing control module to make the opening and closing control module activate the control opening electromagnet 203. Under the action of the magnetic attraction force between the control opening electromagnet 203 and the control opening bar magnet 205, both window bodies 102 will move towards the direction close to the control opening electromagnet 203 until both window bodies 102 move to the left, ensuring that the window can be opened regardless of whether the window is in the open state or the closed state and regardless of the position of the two window bodies 102, so as to achieve ventilation and heat dissipation. After the control opening electromagnet 203 is activated for a certain period of time, the opening and closing control module will automatically turn off the control opening electromagnet 203 to reduce the energy consumption of the control opening electromagnet 203. As time goes by, the outdoor temperature gets higher and higher, especially when approaching noon. If the window is still open, not only will it not achieve the heat dissipation effect, but it will also cause the indoor temperature to rise further. When the analysis and general control unit finds that the outdoor temperature rises to a certain extent, it will send a signal to the opening and closing control module to make the opening and closing control module activate the control closing electromagnet 207. Under the action of the magnetic attraction force between the control closing electromagnet 207 and the control closing bar magnet 208, the window body 102 installed with the control closing bar magnet 208 will move to the right, and the window body 102 not installed with the control closing bar magnet 208 will remain in place, so as to automatically close the window to prevent the indoor temperature from rising. Similarly, after the control closing electromagnet 207 is activated for a certain period of time, the opening and closing control module will also automatically turn off the control closing electromagnet 207. Therefore, through the setting of the adaptive temperature control mechanism, in summer, the adaptive temperature control mechanism will automatically adjust the opening and closing of the window according to the outdoor temperature. When the outdoor temperature is relatively low, the adaptive temperature control mechanism will automatically open the window for ventilation and heat dissipation to reduce the indoor temperature.After the outdoor temperature rises, the temperature adjustment mechanism will automatically close the window, delaying the rise of the indoor temperature. There is no need for people to manually open and close it. This not only makes the window more intelligent, enhances the ventilation and heat dissipation function of the window, but also prevents the indoor temperature from rising sharply due to people opening the window at the wrong time. In addition, since the opening and closing of the window are controlled by an electromagnet, it will not affect people's manual opening and closing. People can also manually open and close the aluminum alloy doors and windows in this application.

[0036] Please refer to Figure 5 In the temperature adjustment intelligent controller 202, a Bluetooth connection module is also set. The Bluetooth connection module is electrically connected to the analysis master control unit, enabling people to use a smart device with Bluetooth function (such as a mobile phone, etc.) to connect to the analysis master control unit through the Bluetooth connection module. Thus, the critical temperature for the analysis master control unit to control the opening and closing of the window can be flexibly set according to the actual situation. In the temperature adjustment intelligent controller 202, a timing switch module is also set. The Bluetooth connection module is electrically connected to the timing switch module, and the timing switch module is electrically connected to the opening and closing control module. People can also use a smart device with Bluetooth function (such as a mobile phone, etc.) to connect to the timing switch module through the Bluetooth connection module, and then set the time nodes for opening and closing the window. For example, set the window to automatically open at 8 pm and automatically close at 8 am. After setting, at 8 pm, the timing switch module will send a signal to the switch control module, causing the opening and closing control module to activate the control-opening electromagnet 203, resulting in the window closing. At 8 am, the timing switch module will send a signal to the switch control module again, causing the opening and closing control module to activate the control-closing electromagnet 207, resulting in the window closing. Therefore, the aluminum alloy doors and windows in this application can also be opened and closed regularly, improving the practicality.

[0037] Please refer to Figures 1-2 and Figure 5 The temperature adjustment mechanism also includes an internal temperature sensor 209 fixedly installed on the window frame 101. The internal temperature sensor 209 is electrically connected to the analysis master control unit. The internal temperature sensor 209 can monitor the indoor temperature, and the monitored data will also be transmitted to the analysis master control unit. If people turn on the air conditioner, the indoor temperature will be relatively low, and the temperature difference between indoor and outdoor will also be relatively large. When the analysis master control unit analyzes and discovers this phenomenon, even if the outdoor temperature is relatively low, it will not send an instruction to the opening and closing control module, and thus will not open the window. This makes the temperature adjustment mechanism not automatically open the window when people turn on the air conditioner to cool down, improving the practicality.

[0038] Please refer to Figure 1, the temperature adjustment and control mechanism further includes a power supply wire 210 embedded in the window frame 101. One end of the power supply wire 210 is fixedly connected with a power supply plug 211. The temperature adjustment intelligent controller 202, the control open electromagnet 203, the external temperature sensor 204, the control close electromagnet 207, and the internal temperature sensor 209 are all electrically connected to the power supply wire 210, which is convenient for supplying power to the temperature adjustment intelligent controller 202, the control open electromagnet 203, etc. The temperature adjustment and control mechanism further includes a master control switch 212 fixedly installed on the window frame 101. The temperature adjustment intelligent controller 202, the external temperature sensor 204, and the internal temperature sensor 209 are all electrically connected to the master control switch 212, enabling people to control the opening and closing of the functions of the temperature adjustment and control mechanism with one key through the master control switch 212, improving convenience.

[0039] Please refer to Figure 3 , isolation panels 213 are embedded in a pair of window bodies 102. The isolation panels 213 are located at one end of the window bodies 102 close to the left storage slot 201, and the isolation panels 213 are made of a magnetic isolation material. The isolation panels 213 can play a role in magnetic isolation to prevent mutual influence between the two control open bar magnets 205.

[0040] Embodiment 2:

[0041] Please refer to Figures 6-10, where the same or corresponding components as those in Embodiment 1 are denoted by the corresponding reference numerals as in Embodiment 1. For simplicity, only the differences from Embodiment 1 will be described below. The differences between Embodiment 2 and Embodiment 1 are as follows: Instead of providing a power supply line 210 and a power supply plug 211 on the window frame 101, an implicit power supply mechanism is provided. The implicit power supply mechanism includes a protection box 301. A power supply 302 is fixedly installed inside the protection box 301. The adaptive intelligent controller 202, the control-on electromagnet 203, the external temperature sensor 204, the control-off electromagnet 207, and the internal temperature sensor 209 are all electrically connected to the power supply 302. The implicit power supply mechanism further includes a connecting slide rail 303 fixedly installed on the window frame 101. A connecting slider 304 that matches the connecting slide rail 303 is fixedly connected to the outer wall of the protection box 301. The connecting slider 304 is slidably connected to the connecting slide rail 303. One end of the power supply 302 is electrically connected to a charging line 305. The charging line 305 passes through the outer wall of the protection box 301 and extends to the outside of the protection box 301. And the end of the charging line 305 away from the power supply 302 is fixedly connected to a charging plug 306. In Embodiment 1, the adaptive intelligent controller 202, the control-on electromagnet 203, etc. are powered by the power supply line 210 and the power supply plug 211. The power supply line 210 and the power supply plug 211 will affect the aesthetics of the window to a certain extent. And if there is no extra power supply socket on the balcony, an additional power strip needs to be arranged. In this embodiment, the adaptive intelligent controller 202, the control-on electromagnet 203, etc. in the adaptive temperature control mechanism can be powered by the power supply 302. The protection box 301, etc. are arranged on the outside of the window, and the protection box 301, etc. cannot be seen from the indoor, thereby improving the aesthetics of the window. In addition, when the power supply 302 runs out of power, slide the protection box 301 to cause the connecting slider 304 to disengage from the connecting slide rail 303, and then the protection box 301 can be removed, so that the protection box 301 can be moved within a certain range, and thus it is convenient to charge the power supply 302 through the charging line 305 and the charging plug 306. Therefore, through the setting of the implicit power supply mechanism, the adaptive intelligent controller 202, the control-on electromagnet 203, etc. in the adaptive temperature control mechanism can also be powered by the power supply 302. The implicit power supply mechanism is hidden outdoors, which can improve the aesthetics of the window, and the power supply 302 is convenient to charge, improving the convenience.

[0042] Please refer to Figure 6 and Figures 9-10, the implicit power supply mechanism further includes a support cylinder 311 fixedly installed on the window frame 101. An electric telescopic rod 312 is fixedly installed inside the support cylinder 311. The output end of the electric telescopic rod 312 is fixedly connected to a reminder lamp 313. The bottom end of the reminder lamp 313 is fixedly connected to a movable stopper 314. The movable stopper 314 penetrates and is slidably connected to the outer wall of the support cylinder 311. A power detection module and a reminder control module are also provided in the adaptive intelligent controller 202. The power supply 302 is electrically connected to the power detection module, the power detection module is electrically connected to the reminder control module, the reminder control module is electrically connected to both the electric telescopic rod 312 and the reminder lamp 313, and both the electric telescopic rod 312 and the reminder lamp 313 are electrically connected to the power supply 302. The power detection module can detect the remaining power of the power supply 302. When the power detection module finds that the power of the power supply 302 is low and needs to be charged, it will send a signal to the reminder control module. After receiving the signal, the reminder control module will light up the reminder lamp 313 and start the electric telescopic rod 312, so that the electric telescopic rod 312 pushes the lit reminder lamp 313 to move outside the support cylinder 311 until the reminder lamp 313 moves to the outside of the support cylinder 311, thereby sending a reminder to people. Therefore, through the combined setting of the power detection module, the reminder control module, the electric telescopic rod 312, the reminder lamp 313, etc., when the remaining power of the power supply 302 is low, the reminder lamp 313 will send a reminder to people, thereby prompting people to charge the power supply 302 in time, and further preventing the operation of the adaptive temperature control mechanism from being affected, improving the practicability. Moreover, the support cylinder 311, the reminder lamp 313, etc. are usually hidden outdoors, thus not affecting the aesthetics of the window.

[0043] Please refer to Figure 8 , a connecting ring 308 is fixedly connected to the outer wall of the protection box 301. A wire receiving cylinder 307 that matches it is threadedly connected to the inside of the connecting ring 308. The charging plug 306 and part of the charging wire 305 are located inside the wire receiving cylinder 307. The wire receiving cylinder 307 can play a role in storing and protecting the charging wire 305 and the charging plug 306. When charging the power supply 302, rotate the wire receiving cylinder 307 and remove the wire receiving cylinder 307 from the connecting ring 308, then the charging wire 305 can be taken out, thus not affecting the charging of the power supply 302.

[0044] Please refer to Figures 7-8 , a sunshade baffle 315 is fixedly connected to the outer wall of the protection box 301. The sunshade baffle 315 can play a sunshade role to prevent the power supply 302 from being damaged by exposure to the sun. Heat dissipation holes 309 are provided on the outer wall of the protection box 301. The heat dissipation holes 309 can improve the heat dissipation efficiency and prevent the temperature inside the protection box 301 from being too high. A dust-proof net 310 that matches it is fixedly installed inside the heat dissipation holes 309. The dust-proof net 310 can prevent dust from entering the protection box 301.

[0045] As described above, it is only the preferred specific implementation manner of the present application; however, the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application, according to the technical solution of the present application and its improved concept, making equivalent replacements or changes, should be covered by the protection scope of the present application.

Claims

1. An intelligent aluminum alloy door and window with adaptive temperature control adjustment, comprising a window frame (101) and a pair of window bodies (102), characterized in that, An adaptive temperature control mechanism is provided on the window frame (101). The adaptive temperature control mechanism includes a left storage groove (201) and a right storage groove (206) opened on the window frame (101). The left storage groove (201) and the right storage groove (206) are respectively opened in the frames on the left and right sides of the window frame (101). An adaptive intelligent controller (202) and a control-opening electromagnet (203) are fixedly installed in the left storage groove (201). A control-closing electromagnet (207) is fixedly installed in the right storage groove (206). An external temperature sensor (204) is fixedly installed on the window frame (101). A control-opening bar magnet (205) is embedded at one end of each of the pair of window bodies (102) close to the left storage groove (201). A control-closing bar magnet (208) is embedded at one end of the right storage groove (206) close to the left storage groove (201). An analysis and total control unit and an opening and closing control module are provided in the adaptive intelligent controller (202). The external temperature sensor (204) is electrically connected to the analysis and total control unit. The analysis and total control unit is electrically connected to the opening and closing control module. The opening and closing control module is electrically connected to both the control-opening electromagnet (203) and the control-closing electromagnet (207); A Bluetooth connection module is further provided in the adaptive intelligent controller (202). The Bluetooth connection module is electrically connected to the analysis and total control unit. A timing switch module is further provided in the adaptive intelligent controller (202). The Bluetooth connection module is electrically connected to the timing switch module. The timing switch module is electrically connected to the opening and closing control module. The adaptive temperature control mechanism further includes an internal temperature sensor (209) fixedly installed on the window frame (101). The internal temperature sensor (209) is electrically connected to the analysis and total control unit; An implicit power supply mechanism is provided on the window frame (101). The implicit power supply mechanism includes a protection box (301). A power supply (302) is fixedly installed in the protection box (301). The adaptive intelligent controller (202), the control-opening electromagnet (203), the external temperature sensor (204), the control-closing electromagnet (207), and the internal temperature sensor (209) are all electrically connected to the power supply (302). The implicit power supply mechanism further includes a connection slide rail (303) fixedly installed on the window frame (101). A connection slider (304) matching the connection slide rail (303) is fixedly connected to the outer wall of the protection box (301). The connection slider (304) is slidably connected to the connection slide rail (303); One end of the power supply (302) is electrically connected to a charging wire (305). The charging wire (305) passes through the outer wall of the protection box (301) and extends to the outside of the protection box (301). And the end of the charging wire (305) far from the power supply (302) is fixedly connected to a charging plug (306); The implicit power supply mechanism further includes a support cylinder (311) fixedly installed on the window frame (101). An electric telescopic rod (312) is fixedly installed inside the support cylinder (311). The output end of the electric telescopic rod (312) is fixedly connected to a reminder lamp (313). The bottom end of the reminder lamp (313) is fixedly connected to a movable stopper (314). The movable stopper (314) penetrates through the outer wall of the support cylinder (311) and is slidably connected thereto. A power detection module and a reminder control module are further provided in the adaptive intelligent controller (202).

2. The intelligent aluminum alloy door and window with adaptive temperature control according to claim 1, characterized in that, Isolation panels (213) are embedded in a pair of the window bodies (102). The isolation panels (213) are located at one end of the window bodies (102) close to the left storage slot (201), and the isolation panels (213) are made of magnetic isolation materials.

3. An intelligent aluminum alloy door and window with adaptive temperature control according to claim 1, characterized in that The power supply (302) is electrically connected to the power detection module. The power detection module is electrically connected to the reminder control module. The reminder control module is electrically connected to both the electric telescopic rod (312) and the reminder lamp (313). Both the electric telescopic rod (312) and the reminder lamp (313) are electrically connected to the power supply (302).

4. An intelligent aluminum alloy door and window with adaptive temperature control according to claim 1, characterized in that, A connection ring (308) is fixedly connected to the outer wall of the protection box (301). A wire receiving cylinder (307) matching the connection ring (308) is threadedly connected to the inner side of the connection ring (308). The charging plug (306) and part of the charging wire (305) are located inside the wire receiving cylinder (307).

5. An intelligent aluminum alloy door and window with adaptive temperature control according to claim 1, characterized in that A sunshade baffle (315) is fixedly connected to the outer wall of the protection box (301). Heat dissipation holes (309) are formed in the outer wall of the protection box (301). Dust-proof nets (310) matching the heat dissipation holes (309) are fixedly installed in the heat dissipation holes (309).

Citation Information

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